Potato Research

  1871-4528

  0014-3065

 

Cơ quản chủ quản:  SPRINGER , Springer Netherlands

Lĩnh vực:
Food ScienceAgronomy and Crop Science

Các bài báo tiêu biểu

Towards F1 Hybrid Seed Potato Breeding
- 2011
P. Lindhout, Davy Meijer, Theo Schotte, R.C.B. Hutten, Richard G. F. Visser, Herman J. van Eck
Durable Late Blight Resistance in Potato Through Dynamic Varieties Obtained by Cisgenesis: Scientific and Societal Advances in the DuRPh Project
Tập 59 Số 1 - Trang 35-66 - 2016
A. J. Haverkort, P.M. Boonekamp, R.C.B. Hutten, E. Jacobsen, L.A.P. Lotz, G.J.T. Kessel, Jack H. Vossen, Richard G. F. Visser
Abstract

From 2006 through 2015, a research project on Durable Resistance in potato against Phytophthora (DuRPh) was carried out at Wageningen University and Research Centre. Its objective was to develop a proof of principle for durable resistance against late blight by cisgenesis. This public-funded project aimed at stimulating research on genetic modification and public debate on innovative genetic techniques. It was decided to clone and transfer late blight resistance (R) genes of crossable wild potato species (cisgenes) by Agrobacterium tumefaciens-mediated transformation without non-potato genes. A stack of multiple R genes were planned to be inserted into established varieties, thereby creating a dynamic variety in which the composition of the stacks may vary over space and time. Cisgenic plants were selected based on the expression of all inserted R genes and trueness-to-type. Within the project, 13 R genes from wild potato species were genetically mapped and three of them were cloned. Four varieties were transformed with one to three R genes. This was initially done using kanamycin resistance provided by a selectable marker gene of synthetic origin in order to quickly test the performance and stability of the introduced R genes and stacked R gene combinations. Once the functioning thereof was confirmed, marker-free transformations were conducted; thus, true cisgenic events were selected. The results about the different R genes, their chromosomal location, their specificity, the background dependence, the maximum size of a stack, its regeneration time and associated somaclonal variation frequency and its stability were studied. After selection and characterisation in the laboratory, the best cisgenic events were assessed in field trials for late blight resistance. This showed that inserted R genes were capable of turning a susceptible variety into a resistant one. Maximising longevity of the resistance was assured through resistance management research. It was shown that stacking of multiple R genes and monitoring how to deploy these stacks spatially and temporally could reduce fungicide use by over 80%. Communications through media and field demonstrations were manifold to allow public and policymakers to decide if cisgenesis is an acceptable tool to make potato farming more sustainable. Future deployment of the DuRPh strategy will depend largely on its status as a genetically modified crop or its exemption thereof. Worldwide near eradication of late blight would increase global annual potato production by close to 80 million tons, thereby contributing considerably to the needed additional global future food supply.

Hand-held chlorophyll meter: a promising tool to assess the nitrogen status of potato foliage
Tập 36 Số 4 - Trang 301-308 - 1993
J. Vos, M. Bom
In Search of Better Management of Potato Common Scab
Tập 55 Số 3-4 - Trang 249-268 - 2012
Merete Wiken Dees, Leslie A. Wanner
The economic impact of potato late blight on US growers
- 2001
Joseph F. Guenthner, K. C. Michael, Phillip Nolte
Potato Production and Breeding in China
Tập 52 Số 1 - Trang 57-65 - 2009
Shelley Jansky, Jin Li, Kaiyun Xie, Conghua Xie, David M. Spooner
Challenges to Organic Potato Farming: Disease and Nutrient Management
Tập 49 Số 1 - Trang 27-42 - 2006
Maria R. Finckh, Elmar Schulte‐Geldermann, Christian Bruns
Pathology and control of soil-borne fungal pathogens of potato
- 1996
M.J. Jeger, G. A. Hide, P.H.J.F. van den Boogert, A.J. Termorshuizen, Peter van Baarlen