Transactions of KarRC RAS :: Scientific publications
Transactions of KarRC RAS :: Scientific publications

Transactions of KarRC RAS :: Scientific publications
Karelian Research Centre of RAS
ISSN (print): 1997-3217
ISSN (online): 2312-4504
Transactions of KarRC RAS :: Scientific publications
Background Editorial committee Editorial Office For authors For reviewer Russian version
Transactions of KarRC RAS :: Scientific publications

Electronic Journal OJS



Series

Biogeography

Experimental Biology

Mathematical Modeling and Information Technologies

Precambrian Geology

Ecological Studies

Limnology and Oceanology

Research in the Humanities (2010-2015)

Region: Economy and Management (2012-2015)



Issues

2024

2023

2022

2021

2020

2019

2018

2017

2016

2015

2014

2013

2012

2011

2010

2009

1999-2008


SCIENTIFIC PUBLICATIONS
М.И. Сысоева, В.В. Лаврова, Е.Ф. Марковская, Е.М. Матвеева, Е.Г. Шерудило.
Влияние ежесуточных кратковременных снижений температуры на состояние фотосинтетического аппарата растений картофеля в условиях заражения фитопаразитической нематодой
// Труды КарНЦ РАН. No 2. Сер. Экспериментальная биология. 2010. C. 41-46
M.I. Sysoeva, V.V. Lavrova, E.F. Markovskaya, E.M. Matveeva, E.G. Sherudilo. Effect of daily short-term temperature drops on the functional condition of the potato plant photosynthetic apparatus invasion by phytoparasite nematode // Transactions of Karelian Research Centre of Russian Academy of Science. No 2. Experimental biology. 2010. Pp. 41-46
Keywords: phytoparasitic nematode Globodera rostochiensis Woll., ETR, qP, NPQ, quantum yield of photosystem II, DROP – short-term temperature reduction.
The effect of daily short-term temperature drops on the functional condition of the plant photosynthetic apparatus was studied by fluorimetry in potato varieties susceptible and resistant to the potato cyst nematode. Two phases can be distinguished in the response of the photosynthetic apparatus to the infection: the first one – up to three weeks, when no infection-induced disturbances of photochemical reactions are visible, the second one – up to a month and a half, when such disturbances become detectable.

trudy_201002_41-46.pdf (113 Kb, total downloads: 300)



  Last modified: July 19, 2013