Potassium transporter KUP9 participates in K+ distribution in roots and leaves under low K+ stress
Taro Yamanashi, Takeshi Uchiyama, Shunya Saito, Tomoko Higashi, Hayato Ikeda, H. Kikunaga, Mutsumi Yamagami, Yasuhiro Ishimaru, Nobuyuki Uozumi
AbstractPotassium (K) is a major essential element in plant cells, and
KUP/HAK/KT-type K+ transporters participate in the absorption of K+ into roots
and in the long-distance transport to above-ground parts. In Arabidopsis
thaliana, KUP9 is involved in the transport of K+ and Cs+ in roots. In this
study, we investigated KUP9 function in relation to the K+ status of the plant.
The expression of KUP... hiện toàn bộ
PIFs- and COP1-HY5-mediated temperature signaling in higher plants
Yeting Bian, Li Chu, Huan Lin, Yaoyao Qi, Fang Zheng, Dongqing Xu
AbstractPlants have to cope with the surrounding changing environmental stimuli
to optimize their physiological and developmental response throughout their
entire life cycle. Light and temperature are two critical environmental cues
that fluctuate greatly during day-night cycles and seasonal changes. These two
external signals coordinately control the plant growth and development. Distinct
spectru... hiện toàn bộ
Regulation of plant responses to biotic and abiotic stress by receptor-like cytoplasmic kinases - 2022
Xiangxiu Liang, Jie Zhang
AbstractAs sessile organisms, plants have to cope with environmental change and
numerous biotic and abiotic stress. Upon perceiving environmental cues and
stress signals using different types of receptors, plant cells initiate
immediate and complicated signaling to regulate cellular processes and respond
to stress. Receptor-like cytoplasmic kinases (RLCKs) transduce signals from
receptors to cellu... hiện toàn bộ
Improvement of leaf K+ retention is a shared mechanism behind CeO2 and Mn3O4 nanoparticles improved rapeseed salt tolerance
Yanhui Li, Jin Hu, Jie Qi, Fameng Zhao, Jiahao Liu, Linlin Chen, Lu Chen, Jiangjiang Gu, Honghong Wu, Zhaohu Li
AbstractSalinity is a global issue limiting efficient agricultural production.
Nanobiotechnology has been emerged as an effective approach to improve plant
salt tolerance. However, little known is about the shared mechanisms between
different nanomaterials-enabled plant salt tolerance. In this study, we found
that both PNC [polyacrylic acid coated nanoceria (CeO2 nanoparticles)] and PMO
(polyacryl... hiện toàn bộ
Một protein hiệu ứng ứng viên PstCFEM1 góp phần vào tính gây bệnh của nấm gây bệnh rỉ sợi và làm suy yếu miễn dịch của lúa mì Dịch bởi AI Tập 2 Số 1 - 2022
Xingxuan Bai, Huan Peng, Farhan Goher, Ashraful Islam, Sanding Xu, Jia Guo, Zhensheng Kang, Jun Guo
Tóm tắtCác protein miền màng ngoại bào của nấm (CFEM) được coi là độc đáo đối
với nấm và có mối liên hệ chặt chẽ với khả năng gây bệnh. Tuy nhiên, yếu tố
Puccinia striiformis f. sp. tritici (Pst) chứa miền CFEM chưa được báo cáo.
Trong nghiên cứu này, chúng tôi đã thu được một yếu tố, PstCFEM1, chứa một chuỗi
peptide tín hiệu N-đầu chức năng và miền CFEM từ giống Pst CYR31. Phân tích
qRT-PCR cho t... hiện toàn bộ
Rapid alkalinization factor: function, regulation, and potential applications in agriculture Tập 3 Số 1
Ran Zhang, Peng-Tao Shi, Min Zhou, H.E. Liu, Xiaojing Xu, Wenting Liu, Kun-Ming Chen
AbstractRapid alkalinization factor (RALF) is widespread throughout the plant
kingdom and controls many aspects of plant life. Current studies on the
regulatory mechanism underlying RALF function mainly focus on Arabidopsis, but
little is known about the role of RALF in crop plants. Here, we systematically
and comprehensively analyzed the relation between RALF family genes from five
important crop... hiện toàn bộ
High-throughput RNA sequencing reveals differences between the transcriptomes of the five spore forms of Puccinia striiformis f. sp. tritici, the wheat stripe rust pathogen
Gangming Zhan, Jia Guo, Yuan Tian, Fan Ji, Xingxuan Bai, Jing Zhao, Jun Guo, Zhensheng Kang
AbstractThe devastating wheat stripe (yellow) rust pathogen, Puccinia
striiformis f. sp. tritici (Pst), is a macrocyclic and heteroecious fungus. Pst
produces urediniospores and teliospores on its primary host, wheat, and
pycniospores and aeciospores are produced on its alternate hosts, barberry
(Berberis spp.) or mahonia (Mahonia spp.). Basidiospores are developed from
teliospores and infect alte... hiện toàn bộ